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At least 19 recordsLinked to original sources

Specificity of the proton adenosinetriphosphatase of Escherichia coli for adenine, guanine, and inosine nucleotides in catalysis and binding.

Specificity of the Escherichia coli proton ATPase for adenine, guanine, and inosine nucleotides in catalysis and binding was studied. MgADP, CaADP, MgGDP, and MgIDP were each good substrates for oxidative phosphorylation. The corresponding triphosphates were each substrates for hydrolysis and proton pumping. At 1 mM concentration, MgATP, MgGTP, and MgITP drove proton pumping with equal efficiency. At 0.1 mM concentration, MgATP was 4-fold more efficient than MgITP or MgGTP. Nucleotide-depleted soluble F1 could rebind to F1-depleted membranes and block proton conductivity through F0; rebound nucleotide-depleted F1 catalyzed pH gradient formation with MgATP, MgGTP, or MgITP. This showed that the nonexchangeable nucleotide sites on F1 need not be occupied by adenine nucleotide for proton pumping to occur. It was further shown that no nucleotide was tightly bound in the nonexchangeable sites of F1 during proton pumping driven by MgGTP in these reconstituted membranes, whereas adenine nucleotide was tightly bound when MgATP was the substrate. Nucleotide-depleted soluble F1 bound maximally 5.9 ATP, 3.2 GTP, and 3.6 ITP of which half the ATP and almost all of the GTP and ITP exchanged over a period of 30-240 min with medium ADP or ATP. Also, half of the bound ATP exchanged with medium GTP or ITP. These data showed that inosine and guanine nucleotides do not bind to soluble F1 in nonexchangeable fashion, in contrast to adenine nucleotides. Purified alpha-subunit from F1 bound ATP at a single site but showed no binding of GTP nor ITP, supporting previous suggestions that the non-exchangeable sites in intact F1 are on alpha-subunits.

Cell Membrane↗

Clastogenic inosine nucleotide as components of the chromosome breakage factor in scleroderma patients.

In the present study, we attempted to identify the chemical nature of the clastogenic factor (CF) from patients with progressive systemic sclerosis (scleroderma). Computerized mass spectrometry of clastogenic fractions obtained by HPLC of plasma ultrafiltrates detected molecular peaks compatible with inosine triphosphate and inosine diphosphate (ITP and IDP). The concomitant detection of IDP, together with ITP, and the absence of these peaks in nonclastogenic fractions and corresponding control fractions are arguments in favor of a biological relevance of these observations. The most important confirmation came from the clastogenic effect of commercial ITP and IDP added to the culture medium of the test cultures. The induction of chromatid type damage by these substances in lymphocytes exposed in the G0 phase of their cell cycle and the prevention of this damage by superoxide dismutase are analogous to the observations with CF.

Cells, Cultured↗

Adenine, guanine, and inosine nucleotides of chick growth cartilage: relationship between energy status and the mineralization process.

The major aim of this investigation was to measure the nucleotide content of the developing chick epiphysis and to relate changes in nucleotide levels to chondrocyte maturation and the development of mineralization. Using a cryostat, sections of cartilage were isolated from the proximal head of the tibial growth cartilage, care being taken to preserve the metabolic integrity of the tissue. Sections were identified microscopically, pooled, and the nucleotide and nucleoside content of each sample determined by HPLC. Procedures used for the study were shown to minimize degradation of nucleotides. Their effectiveness was assessed through an evaluation of the rapid freezing technique and by examination of the effects of apatite on the recovery of endogenous and added nucleotides. Analysis of nucleotide levels in the growth cartilage indicated that chondrocytes undergo a profound change in energy metabolism during development and maturation. Thus, in the premineralized resting and proliferative zones, ATP and, to a lesser extent, GTP values were high, suggesting that the chondrocytes obtained metabolic energy through both glycolytic and mitochondrial oxidative processes. In the hypertrophic zone and in calcified cartilage, there was a profound decrease in the ATP concentration and a corresponding fall in the energy charge and the ATP/ADP ratios. The nucleotide levels in this zone indicated that there was increased reliance on nonoxidative metabolism. Measurement of nucleoside levels in premineralized cartilage suggested that there was little resynthesis of nucleotides through the salvage pathway. These observed changes in nucleotide values are consistent with earlier observations concerning chondrocyte redox and the low pO2 tension of the hypertrophic zone.2+off

Adenine Nucleotides↗

Studies on ethionine-induced fatty liver.

1. The effects of the administration of dl-ethionine on some aspects of lipid and nucleotide metabolism in rat liver were studied. 2. In ethionine-treated animals neutral fat was increased, whereas phospholipids and cholesterol were unchanged. Lipogenesis in vitro was inhibited. 3. The concentration of nicotinamide nucleotides, purine nucleotides and pyrimidine nucleotides was decreased. The decrease was due to free adenine nucleotides, inosine nucleotides, uridine nucleotides and cytidine nucleotides. Also, the protein-bound biotin content was lower. 4. In biotin-deficient rats the development of ethionine-induced fatty liver was inhibited. 5. The possibility was considered that ethionine might produce an inhibition of the synthesis of biotin-dependent acetyl-CoA carboxylase.

Acetates↗

Effects of electrical stimulation on the post-mortem biochemical changes and texture of broiler pectoralis muscle.

A study was conducted to determine the influence of electrical stimulation (50,200, or 350 V ac) on biochemical and textural changes in broiler breast muscle. Sixty-four broilers were stunned (50 V ac) prior to kill, and all but a control group were pulse stimulated during bleeding. After processing, carcasses were held in 10-C water for 1 h, then in 2-C ice/water slush for 1 h prior to muscle removal at 2 h post-mortem (PM). Bagged samples were held at 2 C for 24 h, then cooked. The pH, R value (ratio of adenine nucleotides to inosine nucleotides), cook yield, fluids and solids lost (F&S), and objective texture were measured. In addition, 16 broilers processed in the same manner were used in producing a profile of sarcoplasmic protein/enzyme changes in the breast muscle by cation exchange fast protein-liquid chromatography at 10 min, 2, and 24 h PM. The R values and soluble protein were also determined. Stimulation at 200 and 350 V accelerated the onset of rigor noted by lower pH values at 10 min and 1 h PM, and higher R values at 2 h PM. Muscle stimulated at 350 V exhibited the lowest cook yield and highest percentage of F&S lost, suggesting both the loss of functional properties and muscle integrity due to this treatment. All control and stimulated samples exhibited shear values in excess of what would be considered tender. Hardness and chewiness values increased as stimulation voltage levels increased. Only one of the seven principal chromatographic peaks decreased in response to increased electrical stimulation.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenine Nucleotides↗

Affinity chromatography on immobilised nucleotides. The synthesis, specificity and applications of immobilised inosine 5'-monophosphate.

The synthesis and characterisation of two IMP analogues, 8-(6-aminohexyl)-ionosine 5'-monophosphate, Ahx8IMP, and inosine 2',3'-O-[1-(6-aminohexyl)-levulinic acid amide]-acetyl 5'-monophosphate, (AhxLvn)2',3'IMP, is described. These analogues were attached to CNBr-activated agarose through the terminal amino group of the spacer molecule. The immobilised-IMP analogues displayed specificity for the inosine-nucleotide-dependent enzyme, IMP dehydrogenase (IMP:NAD+ oxidoreductase, EC 1.2.1.14) but not for the NAD+-dependent enzymes, L-alanine and L-acetate dehydrogenases. Escherichia coli IMP dehydrogenase could be eluted biospecifically from immobilised 8-substituted and ribose-substituted IMP adsorbents with IMP, XMP and GMP. Multiple peaks of enzyme activity in the elution profiles were interpreted in terms of aggregation of the enzyme. A protocol for the large-scale purification of E. coli IMP dehydrogenase is proposed. Homogeneous enzyme of specific activity 9.1 units/mg was obtained in 50% overall yield, representing 14 mg pure protein from a 20-1 culture of E. coli. The two IMP analogues were inactive as substrates in the IMP dehydrogenase reaction.

Animals↗

Calcium-induced conversion of adenine nucleotides to inosine monophosphate in human red cells.

1. When inosine-fed human red cells are permeabilized to calcium by exposure to the ionophore A23187, progressively larger proportions of the cell population become irreversibly depleted of ATP as calcium influx is increased (Brown & Lew, 1983; García-Sancho & Lew, 1988b). When calcium influx is over 30 mmol/(l cells.h), all cells become ATP depleted and calcium equilibrated (E cells) (García-Sancho & Lew, 1988b). When calcium influx is lower, E cells co-exist with cells able to maintain normal ATP and low calcium contents in vigorous pump-leak balance (B cells). The experiments reported here investigate why calcium-induced ATP depletion of E cells is irreversible. 2. The inosine monophosphate (IMP) content of cells after 30 min of calcium permeabilization increased with the magnitude of the calcium load, roughly in inverse proportion to the fall in ATP. The calcium-induced increase in IMP was confined to the fraction of cells which became osmotically resistant after SCN- treatment (H cells), and which contained the E cells. 3. Cell nucleotides were measured after calcium permeabilization [( A23187]c = 100 mumol/l cells) in substrate-free media with different [Ca2+]o (0-0.5 mM). Calcium entry caused rapid ATP fall, AMP and IMP accumulation, and delayed ADP fall at all [Ca2+]o concentrations. Initial IMP formation increased with [Ca2+]o along a sigmoid saturation-like curve whereas AMP accumulation and ATP fall were maximal at [Ca2+]o = 20 microM and declined at the higher [Ca2+]o. The rate of IMP formation correlated positively with cell ATP and negatively with cell AMP at all [Ca2+]o values. 4. The AMP deaminase activity of red cell lysates was reversibly increased over tenfold by calcium. Half-maximal stimulation was observed at a Ca2+ concentration of about 50 microM. 5. These results suggest that the irreversibility of calcium-induced ATP depletion results from irreversible trapping of the adenine nucleotide as IMP, and help explain the mechanism of E cell formation.

AMP Deaminase↗

Purine metabolism in Saccharomyces cerevisiae.

The synthesis, interconversion, and catabolism of purine bases, ribonucleosides, and ribonucleotides in wild-type Saccharomyces cerevisiae were studied by measuring the conversion of radioactive adenine, hypoxanthine, guanine, and glycine into acid-soluble purine bases, ribonucleosides, and ribonucleotides, and into nucleic acid adenine and guanine. The pathway(s) by which adenine is converted to inosinate is (are) uncertain. Guanine is extensively deaminated to xanthine. In addition, some guanine is converted to inosinate and adenine nucleotides. Inosinate formed either from hypoxanthine or de novo is readily converted to adenine and guanine nucleotides.

Adenine↗

[Cyclic nucleotides and inosine triphosphate as biochemical modulators of receptor domain ion channel permeability].

Different pathways of control over the permeability of ionic channels in the receptor domains (RD) of biological membranes and their possible functional role in various receptor systems are discussed. It is suggested that cyclic mononucleotides and inositol-triphosphate may directly act as biochemical modulators of such permeability by blocking the Ca(2+)-binding sites of the gate mechanisms of RD ionic channels by recruiting, in particular, Ca2+ within the cell from both intracellular calcium depots and the intercellular medium. Kinetic schemes of gate mechanisms for all possible types of RD ionic channels have been proposed for a case when, in addition to Ca(2+)-ions, the reaction medium contains another type of ions or molecules capable of blocking only one Ca(2+)-binding site of the gate mechanism. Such kinetic schemes form the basis for qualitative and quantitative analyses of cyclic mononucleotide and inositol-triphosphate influence on the permeability of RD ionic channels.

Binding Sites↗

Determination of adenine nucleotides and inosine in human myocard by ion-pair reversed-phase high-performance liquid chromatography.

An isocratic high-performance liquid chromatographic system for the quantitation of AMP, ADP and ATP is presented. The separations were achieved at room temperature by reversed-phase chromatography (Supelcosil LC-18). The standard solvent was 220 mM potassium phosphate, pH 6.9, 1% (v/v) methanol and 0.3 mM tetrabutylammonium hydrogen sulphate. A selective retention of the adenine nucleotides as a group relative to the mono-, di- and triphosphates of guanosine, uridine and cytidine was observed under these experimental conditions. The adopted procedure was applied to the separation of adenine nucleotides in biological extracts, i.e., human myocard. The adenine nucleotides in an extract of myocard were quantitated in less than 20 min. Only 5-10 mg (wet weight) of myocard were needed in order to determine the energy charge of a myocardial sample. Also inosine was easily quantitated in this liquid chromatographic system.

Adenine Nucleotides↗

Stimulation of fluid secretion of malpighian tubules of drosophila melanogaster meig. by cyclic nucleotides of inosine, cytidine, thymidine and uridine

External application of the 3',5'-cyclic monophosphates of inosine, cytidine, uridine and thymidine stimulated the fluid secretion rate (FSR) of Malpighian tubules isolated from Drosophila melanogaster. The evidence suggested that the cyclic nucleotides acted intracellularly in some capacity. Receptors of the 'purinergic' type appeared not to be major contributors to fluid secretion; of three purinergic agonists tried, adenosine, adenosine 5'-monophosphate (AMP) and adenosine 5'-triphosphate (ATP), only adenosine had an effect, but this was not observed consistently. None of the purinergic agonists interfered with the stimulation of the FSR by adenosine 3',5'-cyclic monophosphate (cAMP). The maximum stimulation of the fluid-secretion rate by any cyclic nucleotide was approximately double the unstimulated (control) rate. Tubules stimulated to less than maximal FSR by one cyclic nucleotide could be stimulated maximally by an appropriate concentration of another cyclic nucleotide. Malpighian tubules bathed in solutions that contained either [3H]cAMP or [3H]cGMP accumulated radioactivity to a level many times that in the medium. Accumulation of radioactivity by tubules bathed in 430 nmol l-1 [3H]cAMP was suppressed by 1 mmol l-1 non-radioactive cyclic nucleotides in the order cAMP>>cGMP>cIMP>cCMP; neither cTMP nor cUMP suppressed the accumulation of [3H]cAMP. Approximately 35 % of the [3H]cAMP and 80 % of the [3H]cGMP that entered the Malpighian tubule cells was metabolised to compounds that were not identified. It was concluded that cyclic nucleotides enter the Malpighian tubule cells by at least one transport mechanism which is particularly sensitive to purine-based nucleotides.

Journal Article↗